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Using immersive audio and vibration to enhance remote diagnosis of mechanical failure in uncrewed vessels

机译:使用沉浸式音频和振动增强对未拧紧容器中机械故障的远程诊断

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There is increasing interest in the maritime industry in the potential use of uncrewed vessels to improve the efficiency and safety of maritime operations. This leads to a number of questions relating to the maintenance and repair of mechanical systems, in particular, critical propulsion systems which if a failure occurs could endanger the vessel. While control data is commonly monitored remotely, engineers on board ship also employ a wide variety of sensory feedback such as sound and vibration to diagnose the condition of systems, and these are often not replicated in remote monitoring. In order to assess the potential for enhancement of remote monitoring and diagnosis, this project simulated an engine room (ER) based on a real vessel in Unreal Engine 4 for the HTC Vive™ VR headset. Audio was recorded from the vessel, with mechanical faults synthesized to create a range of simulated failures. In order to simulate operational requirements, the system was remotely fed data from an external server. The system allowed users to view normal control room data, listen to the overall sound of the space presented spatially over loudspeakers, isolate the sound of particular machinery components, and feel the vibration of machinery through a body worn vibration transducer. Users could scroll through a 10-hour time history of system performance, including audio, vibration and data for snapshots at hourly intervals. Seven experienced marine engineers were asked to assess several scenarios for potential faults in different elements of the ER. They were assessed both quantitatively regarding correct fault identification, and qualitatively in order to assess their perception of usability of the system. Users were able to diagnose simulated mechanical failures with a high degree of accuracy, mainly utilising audio and vibration stimuli, and reported specifically that the immersive audio and vibration improved realism and increased their ability to diagnose system failures from a remote location.
机译:对于海事行业,人们越来越有兴趣使用未航行的船只来提高海事作业的效率和安全性。这引起了与机械系统的维护和修理有关的许多问题,特别是关键的推进系统,如果发生故障可能会危及船舶。虽然通常可以远程监控控制数据,但船上的工程师还采用各种感觉反馈(例如声音和振动)来诊断系统的状况,而这些通常不会在远程监控中复制。为了评估增强远程监控和诊断的潜力,该项目在虚幻引擎4中基于HTC Vive™VR耳机的真实容器模拟了一个机舱(ER)。记录了船舶的声音,并综合了机械故障以创建一系列模拟故障。为了模拟操作需求,系统从外部服务器远程馈送数据。该系统允许用户查看正常的控制室数据,通过扬声器聆听空间呈现的整体声音,隔离特定机械组件的声音,并通过穿戴式振动传感器感受到机械的振动。用户可以滚动浏览10小时的系统性能历史记录,包括每小时间隔的快照的音频,振动和数据。要求七名经验丰富的船舶工程师评估ER不同元素中潜在故障的几种情况。对他们进行了正确的故障识别定量评估和定性评估,以评估他们对系统可用性的看法。用户能够主要通过利用音频和振动刺激来高度准确地诊断模拟的机械故障,并且特别报告说,沉浸式音频和振动改善了真实感,并提高了从远程位置诊断系统故障的能力。

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